US9935749B2

Method and apparatus for allocating a pilot signal adapted to the channel characteristics

Summary by NHIP

Dynamic Pilot Allocation Method

The method allocates multi-carrier resource sub-spaces to nodes based on estimated radio conditions and assigns specific pilot configurations to each space. At least two pilot resource configurations are provided to match the distinct pilot needs of different nodes within the system.

Claim Score by NHIP

Read claim 34, the broadest

Abstract

A set of different pilot structures are designed for use in different environments and/or different user behaviors that are expected to occur in a cell. The radio conditions for a user are estimated. Each user is then assigned an area (108A-E) in resource space for its communication, which has a suitable pilot configuration. In one embodiment, the entire resource space is provided with different pilot structures in different parts (110A-D) In advance and allocation of resources to the users are then performed in order to match estimated radio conditions to the provided pilot structure. In another embodiment, allocation is performed first, and then the actual pilot structure is adapted within the allocated resource space area to suit the environmental conditions.

US9935749B2, drawing sheet 1
Sheet 1 of 12

Term

Term ended

Expired 8 November 2025, 0.9 years ago.

  1. Priority and filed
  2. Granted
  3. Expired
  4. Today

35 claims: 4 independent, 31 dependent

  1. 1
    A method for wireless communication in a multi-user, multi-carrier communications system, using a multi-carrier resource space of at least two dimensions, of which one is frequency, said multi-carrier communications system allowing a data stream to be separated into a series of parallel data streams, each of which is modulated and simultaneously transmitted with a different frequency, comprising the step of:allocating a first resource sub-space of entire said multi-carrier resource space for communication between a first node and a second node;said first resource sub-space comprising resources of more than one carrier;obtaining data associated with estimated radio conditions for communication between the first node and the second node;allocating a second resource sub-space of entire said multi-carrier resource space for communication between the first node and a third node;said second resource sub-space comprising resources of more than one carrier, obtaining data associated with estimated radio conditions for communication between the first node and the third node;and providing access to the use of at least two pilot resource configurations, intended for different estimated node radio conditions, whereby the first resource sub-space is associated a pilot resource configuration, being in agreement with pilot need for the estimated radio conditions for the second node and the second resource sub-space is associated a pilot resource configuration, being in agreement with pilot need for the estimated radio conditions for the third node;and whereby at least one of the first resource sub-space and the second resource sub-space comprises a carrier having both pilot resources and data resources within said first resource sub-space or said second resource subspace, respectively.
  2. 26
    A first node of a multi-user, multi-carrier wireless communications system using a multi-carrier resource space of least two dimensions, of which one is frequency, said first node being arranged for handling a data stream separated into a series of parallel data streams, each of which being modulated and simultaneously transmitted with a different frequency, the first node comprising:a transceiver operable to receive the data stream;and at least one processor coupled to the transceiver, the at least one processor operable to: allocate a first resource sub-space of entire said multicarrier resource space for communication between the first node and a second node, said first resource sub-space comprising resources of more than one carrier;obtain data associated with estimated radio conditions for communication between the first node and the second node;allocate a second resource sub-space of entire said multi-carrier resource space for communication between the first node and a third node, said second resource sub-space comprising resources of more than one carrier;obtain data associated with estimated radio conditions for communication between the first node and the third node;and provide access to the use of at least two pilot resource configurations, intended for different estimated node radio conditions, whereby the first resource sub-space comprises a pilot resource configuration, being in agreement with pilot need for the estimated radio conditions for the second node and the second resource sub-space comprises a pilot resource configuration, being in agreement with pilot need for the estimated radio conditions for the third node, and whereby at least one of the first resource sub-space and the second resource sub-space comprises a carrier having both pilot resources and data resources within said first resource sub-space or said second resource subspace, respectively.
  3. 34
    Broadest claimClaim Score 40, average(NHIP)A user equipment operable to handle connection to a multi-user, multi-carrier wireless communications system using a multi-carrier resource space of least two dimensions, of which one is frequency, said user equipment being further arranged for handling a data stream to be separated into a series of parallel data streams, each of which is modulated and simultaneously transmitted with a different frequency, the user equipment comprising:a receiver operable to: use a first resource sub-space of entire said multi-carrier resource space for communicating with a node, the first resource sub-space comprising resources of more than one carrier;and receive data characterizing a first pilot resource configuration out of a set of at least two different pilot resource configurations from the node;and a processor in communication with the receiver, the processor operable to perform channel estimation based on the received data characterising the first pilot resource configuration;wherein the first pilot resource configuration is in agreement with pilot need for estimated radio conditions for the user equipment;and wherein the first resource sub-space comprises a carrier having both pilot resources and data resources within said first resource sub-space.
  4. 35
    A multi-user, multi-carrier wireless communications system using a multi-carrier resource space of least two dimensions, of which one is frequency, said wireless communications system being arranged for handling a data stream separated into a series of parallel data streams, each of which being modulated and simultaneously transmitted with a different frequency, the multi-user, multi-carrier wireless communications system comprising:a first node;and a second node in communication with first node, and wherein at least one of the first node and the second node comprises: at least one processor operable to: allocate a first resource sub-space of entire said multi-carrier resource space for communication between the first node and a second node, wherein the first resource sub-space comprises resources of more than one carrier;and allocate a second resource sub-space of entire said multi-carrier resource space for communication between the first node and a third node, wherein said second resource sub-space comprises resources of more than one carrier;obtain data associated with estimated radio conditions for communication between the first node and the second node;obtain data associated with estimated radio conditions for communication between the first node and the third node;and provide access to the use of at least two pilot resource configurations, intended for different estimated node radio conditions, wherein the first resource sub-space comprises a pilot resource configuration, being in agreement with pilot need for the estimated radio conditions for the second node and the second resource sub-space comprises a pilot resource configuration, being in agreement with pilot need for the estimated radio conditions for the third node, and wherein at least one of the first resource sub-space and the second resource sub-space comprises a carrier having both pilot resources and data resources within said first resource sub-space or said second resource sub-space, respectively.